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Two-particle photoemission from strongly correlated systems: A dynamical mean-field approach

机译:来自强相关系统的两粒子光发射:动态平均场方法

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We study theoretically the simultaneous photoinduced two-particle excitations of strongly correlated systems on the basis of the Hubbard model. Under certain conditions specified in this work, the corresponding transition probability is related to the two-particle spectral function which we calculate using three different methods: the dynamical mean-field theory combined with quantum Monte Carlo technique, the first-order perturbation theory and the ladder approximations. The results are analyzed and compared for systems at the verge of the metal-insulator transitions. The dependencies on the electronic correlation strength and on doping are explored. In addition, the account for the orbital degeneracy allows an insight into the influence of interband correlations on the two-particle excitations. A suitable experimental realization is discussed.
机译:我们在Hubbard模型的基础上理论上研究强相关系统的同时光诱导两粒子激发。在本文指定的某些条件下,相应的跃迁概率与我们使用三种不同方法计算出的两粒子光谱函数有关:动力学平均场理论与量子蒙特卡洛技术相结合,一阶微扰理论和梯形近似。对于金属-绝缘体过渡处的系统,将对结果进行分析和比较。探索了对电子相关强度和掺杂的依赖性。此外,考虑到轨道的简并性,可以深入了解带间相关性对两粒子激发的影响。讨论了合适的实验实现。

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